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扫视适应过程中的皮质差异激活。

Differential cortical activation during saccadic adaptation.

机构信息

Department of Psychology, University of Regensburg, Regensburg, Germany.

出版信息

J Neurophysiol. 2012 Mar;107(6):1738-47. doi: 10.1152/jn.00682.2011. Epub 2011 Dec 14.

Abstract

The human saccadic system can dynamically adjust its gain if errors occur after saccade execution. Although this ability has long been studied, the underlying neural mechanisms and its functional purpose remain as of yet unclear. Using functional magnetic resonance imaging coupled with gaze-contingent visual stimulation, we compared brain activation before and after subjects adapted to a gaze-contingent shift in the target location (inward step). This comparison suggests the existence of a predictive signal related to the gain adjustment of upcoming saccades to decrease saccadic gain. Contrary to previous studies, we were able to identify activation differences in the supplementary eye fields that vary with the amount of saccadic gain decrease. In addition to signal amplitude differences in saccade-related eye fields, we also found active cortical regions in the temporal lobe and the posterior insula, which have been functionally related to vestibular processing and to the representation of head position and head motion. The results might point to new directions for research on saccadic adaptation pointing to the functional role of this mechanism.

摘要

人类扫视系统如果在扫视执行后出现错误,可以动态调整其增益。尽管这种能力已经被研究了很长时间,但潜在的神经机制及其功能目的仍然不清楚。使用功能磁共振成像结合注视相关的视觉刺激,我们比较了受试者在适应目标位置(向内步)的注视相关转移前后的大脑激活情况。这一比较表明存在与即将到来的扫视增益调整相关的预测信号,以降低扫视增益。与之前的研究不同,我们能够在补充眼区识别出与扫视增益降低量相关的激活差异。除了扫视相关眼区的信号幅度差异外,我们还发现颞叶和后岛叶的活跃皮质区域,这些区域在功能上与前庭处理以及头位和头部运动的表示有关。研究结果可能为扫视适应的研究指明新的方向,指向该机制的功能作用。

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